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Evanescent wave optical binding forces on spherical microparticles

机译:spherical逝波对球形微粒的光学结合力

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In this Letter, we demonstrate stable optical binding of spherical microparticles in counter-propagating evanescent optical fields formed by total reflection at a dielectric interface. The microspheres are observed to form one-dimensional chains oriented parallel to the direction of propagation of the beams. We characterize the strength of the optical binding interaction by measuring the extent of Brownian position fluctuations of the optically bound microspheres and relating this to a binding spring constant acting between adjacent particles. A stronger binding interaction is observed for particles near the middle of the chain, and the dependence of the binding strength on incident laser power and number of particles in the chain is determined. (C) 2015 Optical Society of America
机译:在这封信中,我们证明了球形微粒在介电界面处由全反射形成的反向传播的渐逝光场中的稳定光学结合。观察到微球形成平行于光束传播方向的一维链。我们通过测量光学结合的微球的布朗位置波动的程度,并将其与作用于相邻颗粒之间的结合弹簧常数相关联,来表征光学结合相互作用的强度。对于链中部附近的粒子观察到更强的结合相互作用,并且确定了结合强度对入射激光功率和链中粒子数量的依赖性。 (C)2015年美国眼镜学会

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